Framework to render spatial information of entities
Abstract
In an embodiment, the spatial information of the business entities are captured and transformed to corresponding spatial coordinates. The spatial coordinates include positional values of the business entities at various instances of time. Based upon a business condition configured for the business entities, the spatial coordinates are processed to compute a deviation between positional values of the spatial coordinates and values specified in the business condition. Based upon the deviation, a correlation between a business logic associated with the business entities and the spatial coordinates is determined. A comparative analysis of the correlation is executed for the spatial coordinates and the associated time instances. Based upon the analysis, the framework is generated to render a visual representation of the spatial information, to establish a business decision.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A computer implemented method to generate a framework to render spatial information of one or more business entities in an enterprise, comprising:
a processor of the computer transforming the spatial information of the business entities to corresponding spatial coordinates; based upon a business condition associated with the business entities, the processor processing the spatial coordinates to compute a deviation; based upon the deviation, the processor determining a correlation between a business logic associated with the business entities and the spatial coordinates; and based upon the correlation, generating the framework to render a visual representation of the spatial information, to establish a business decision.
2 . The computer implemented method of claim 1 further comprising: capturing spatial information of the business entities.
3 . The computer implemented method of claim 1 further comprising:
determining the business condition and the business logic associated with the business entities;
based upon the business condition and the business logic, generating a correlation framework to
transform a received spatial information into corresponding spatial coordinates;
compute a deviation between the spatial coordinates and the business condition;
based upon the deviation, determine a correlation between the business logic and the spatial coordinates; and
render a visual representation including the correlation, to establish the business decision.
4 . The computer implemented method of claim 1 , wherein the spatial coordinates comprise one or more positional values of each business entity at a corresponding instance.
5 . The computer implemented method of claim 1 , wherein transforming the spatial information to the spatial coordinates comprise:
identifying a location of the business entities in the enterprise; identifying a movement of the business entities; and generating the spatial coordinates including a statistical representation of the location and the movement of the business entities.
6 . The computer implemented method of claim 5 , wherein the location and the movement of the business entities are persisted in a database along with corresponding time-stamps.
7 . The computer implemented method of claim 5 further comprising: generating a historical data set based upon the information and time-stamps persisted in the database, wherein the historical data set renders the spatial information of the business entities over a period of time.
8 . The computer implemented method of claim 1 , wherein processing the spatial coordinates comprise:
identifying a positional value associated with each spatial coordinate; and comparing the positional value with values associated with the business condition to determine the deviation.
9 . The computer implemented method of claim 1 further comprising: mapping the spatial coordinates corresponding to the business entities on a computer generated user interface.
10 . The computer implemented method of claim 1 , wherein the business condition comprises: a threshold value indicating one or more actions to be executed based upon a deviation of the spatial information from the threshold value.
11 . The computer implemented method of claim 1 , wherein the business condition comprises: a threshold drift indicating one or more actions to be executed immediately based upon a deviation of the spatial information from the threshold value.
12 . The computer implemented method of claim 9 , wherein the computer generated user interface comprises: a visual representation of the spatial coordinates indicating the deviation of the values associated with the spatial coordinates from the threshold value.
13 . The computer implemented method of claim 1 , wherein the business logic associated with the business entities comprise instructions:
to derive a relation between the spatial coordinates and the business entities; based upon the enterprise, to identify a significance of the relation, and based upon the significance, to derive a business scope for the spatial coordinates.
14 . The computer implemented method of claim 1 , wherein determining the correlation comprises: determining the relation and the corresponding significance between the spatial coordinates and the business entities.
15 . The computer implemented method of claim 1 , wherein the framework configures the computer generated user interface to render a visual representation of the spatial coordinates, the correlation between the spatial coordinates, and the historical data.
16 . The computer implemented method of claim 1 , wherein the framework executes a comparative analysis of the spatial coordinates to render a visual representation of the correlation between the business logic and the spatial coordinates.
17 . An article of manufacture including a computer readable storage medium to tangibly store instructions, which when executed by a computer, cause the computer to:
transform spatial information of business entities to corresponding spatial coordinates; based upon a business condition associated with the business entities, process the spatial coordinates to compute a deviation; based upon the deviation, determine a correlation between a business logic associated with the business entities and the spatial coordinates; and based upon the correlation, render a visual representation of the spatial information, to establish a business decision.
18 . A computer system to generate a framework to render spatial information of one or more business entities in an enterprise, comprising:
a processor to read and execute instructions stored in one or more memory elements; and the one or more memory elements storing instructions to:
a position indicator to capture the spatial information of the business entities;
the processor to transform the spatial information to one or more corresponding spatial coordinates;
a business repository to store one or more business conditions and one or more business logic corresponding to the business entities;
a deviation indicator to process the spatial coordinates and compute a deviation based upon the business conditions associated with the business entities;
the processor to determine a correlation between the business logic associated with the business entities and the spatial coordinates based upon the deviation; and
a computer generated user interface element to generate a framework to render a visual representation of the spatial information of the business entities and establish a business decision, based upon the correlation.
19 . The computer system of claim 18 further comprising: an analyzer to comparatively analyze the correlation between the business logic, the spatial coordinates and associated time-stamps.
20 . The computer system of claim 18 further comprising: a database to
persist movement and location information of the business entities along with corresponding time-stamps; and
generate a historical data set based upon the persisted information over a period of time.Join the waitlist — get patent alerts
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